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Average Transmit Power of Adaptive ZF Very Large Multi-user and Multi-antenna Systems

机译:自适应ZF超大型多用户和多天线系统的平均发射功率

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摘要

In this paper, we investigate adaptive zero-forcing uplink transmission for very large multi-user multi-antenna systems in Rayleigh fading environments. We assume that the number of antennas at the base station (denoted as ) is not less than the number of users (denoted as ) with each having single antenna, and power control can be done at the transmitter(s) as channel condition changes. Under constraints of individual rates and maximum transmit powers, we adopt the optimal transmit strategy of minimizing the total average transmit power (ATP). We derive and give individual ATP expressions for each link with short- and long-term rate constraints, respectively. Numerical results show that the individual ATP for each link with short term rate constraint is quite close to its long term counterpart when is large, and its corresponding outage probability can be designed to be nearly zero at the same time. Finally, we present two simple adaptive transmission schemes with constant transmit power satisfying short- and long-term rate constraints, respectively. Both of them are easy to implement, and asymptotically optimal when grows without bound.
机译:在本文中,我们研究了瑞利衰落环境下超大型多用户多天线系统的自适应零强迫上行链路传输。我们假设基站的天线数量(表示为)不少于每个用户具有单个天线的用户数量(表示为),并且随着信道条件的变化,可以在发射机处进行功率控制。在各个速率和最大发射功率的约束下,我们采用了使总平均发射功率(ATP)最小化的最佳发射策略。我们分别为每个链接分别提供短期和长期利率约束条件的ATP表达式。数值结果表明,当具有较大速率时,具有短期速率约束的每个链路的单个ATP都非常接近其长期对应的ATP,并且可以将其相应的中断概率同时设计为几乎为零。最后,我们提出了两种简单的自适应传输方案,它们具有恒定的发射功率,分别满足短期和长期速率约束。它们都易于实现,并且在无限制增长时渐近最优。

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